AVCHD to MPEG Converter

Convert AVCHD camcorder video to classic MPEG format

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Settings

The codec to encode the video track. Codec "Without reencoding" copies the video stream from the input file into output without re-encoding if possible.
Set the video quality in a VBR mode. Choose "Custom" if you need to set a fixed bitrate (CBR).
Set an output video resolution by selecting one from the predefined set of the most popular resolutions or manually entering a custom resolution.

avchd

AVCHD (Advanced Video Coding High Definition) is a high-definition recording format jointly developed by Sony and Panasonic for use in consumer and semi-professional camcorders. Announced in 2006, the format records H.264/MPEG-4 AVC video at resolutions up to 1920x1080 with Dolby Digital or uncompressed LPCM audio, stored within an MPEG-2 transport stream container. AVCHD was designed to work with a variety of recording media, including optical discs, hard disk drives, and solid-state memory cards, giving camera manufacturers flexibility in hardware design. The use of H.264 compression delivers superior image quality at lower bit rates compared to earlier recording standards like DV and MPEG-2, enabling longer recording times on the same storage capacity. AVCHD supports progressive and interlaced scanning modes, accommodating both cinematic and broadcast-style shooting. The directory structure follows a strict specification that includes playlist files for navigating recorded clips, making it compatible with Blu-ray players when recorded to compatible disc media. An enhanced version, AVCHD 2.0, added support for 1080/60p progressive recording and 3D stereoscopic video. The format remains widely used in the camcorder market and continues to be supported by major video editing applications.
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mpeg

MPEG (MPEG-1) is a foundational video and audio compression standard published in August 1993 by the Moving Picture Experts Group as ISO/IEC 11172. It was the first international standard for lossy compression of moving pictures and associated audio, establishing principles and techniques that would influence virtually all subsequent video codecs. MPEG-1 video achieves compression through a combination of motion-compensated prediction, discrete cosine transform coding, and variable-length entropy encoding, organized around three frame types: I-frames (intra-coded), P-frames (predicted), and B-frames (bidirectionally predicted). The standard targets bit rates around 1.5 Mbps for combined audio and video, producing quality comparable to VHS tape at SIF resolution (352x240 for NTSC). This compression level was specifically chosen to match the data throughput of 1x-speed CD-ROM drives, enabling the Video CD format that brought digital video to consumers in the early 1990s. The audio component, particularly Layer III (MP3), went on to become the most influential audio format in history. The I/P/B frame structure, motion estimation approach, and block-based transform coding established the architectural template followed by every major video codec since, from MPEG-2 through H.264 and beyond. Though long surpassed in compression efficiency, MPEG-1 remains supported by virtually all media software.
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Classic Standard

MPEG has decades of universal support — convert AVCHD to ensure playback on any media system ever built.

Flexible Parameters

Set codec, resolution, and bitrate to produce MPEG files for DVD authoring, broadcast, or general playback.

File Privacy

AVCHD uploads are deleted after conversion. MPEG outputs are removed from servers within 24 hours.

How to convert AVCHD to MPEG

1

Select or drag&drop AVCHD video to convert it to the MPEG format from your computer, iPhone or Android. Moreover, it is possible to choose it from your Google Drive or Dropbox account.

2

Now your video is uploaded and you can start the AVCHD to MPEG conversion. If it is needed, change the output format to one of the 37 video formats supported. After that, you can add more videos for batch conversion.

3

If you want, you can customize such settings as resolution, quality, aspect ratio and others by clicking the gear icon. Apply them to all the video files if necessary and click the button "Convert" to process.

4

Once your video is converted and edited, you can download it to your Mac, PC or another device. If necessary, save the file to your Dropbox or Google Drive account.

About formats

AVCHD (Advanced Video Coding High Definition) is a high-definition recording format jointly developed by Sony and Panasonic for use in consumer and semi-professional camcorders. Announced in 2006, the format records H.264/MPEG-4 AVC video at resolutions up to 1920x1080 with Dolby Digital or uncompressed LPCM audio, stored within an MPEG-2 transport stream container. AVCHD was designed to work with a variety of recording media, including optical discs, hard disk drives, and solid-state memory cards, giving camera manufacturers flexibility in hardware design. The use of H.264 compression delivers superior image quality at lower bit rates compared to earlier recording standards like DV and MPEG-2, enabling longer recording times on the same storage capacity. AVCHD supports progressive and interlaced scanning modes, accommodating both cinematic and broadcast-style shooting. The directory structure follows a strict specification that includes playlist files for navigating recorded clips, making it compatible with Blu-ray players when recorded to compatible disc media. An enhanced version, AVCHD 2.0, added support for 1080/60p progressive recording and 3D stereoscopic video. The format remains widely used in the camcorder market and continues to be supported by major video editing applications.
Developer: Sony & Panasonic
Initial release: June 2006
MPEG (MPEG-1) is a foundational video and audio compression standard published in August 1993 by the Moving Picture Experts Group as ISO/IEC 11172. It was the first international standard for lossy compression of moving pictures and associated audio, establishing principles and techniques that would influence virtually all subsequent video codecs. MPEG-1 video achieves compression through a combination of motion-compensated prediction, discrete cosine transform coding, and variable-length entropy encoding, organized around three frame types: I-frames (intra-coded), P-frames (predicted), and B-frames (bidirectionally predicted). The standard targets bit rates around 1.5 Mbps for combined audio and video, producing quality comparable to VHS tape at SIF resolution (352x240 for NTSC). This compression level was specifically chosen to match the data throughput of 1x-speed CD-ROM drives, enabling the Video CD format that brought digital video to consumers in the early 1990s. The audio component, particularly Layer III (MP3), went on to become the most influential audio format in history. The I/P/B frame structure, motion estimation approach, and block-based transform coding established the architectural template followed by every major video codec since, from MPEG-2 through H.264 and beyond. Though long surpassed in compression efficiency, MPEG-1 remains supported by virtually all media software.
Initial release: August 1993

Frequently Asked Questions

Why convert AVCHD to MPEG?

MPEG is universally supported by every media system built in the last three decades. Converting removes AVCHD compatibility barriers.

What plays MPEG?

Every major media player, DVD system, and video editor supports MPEG — it is the foundation of digital video standards.

Can I author DVDs?

Yes — MPEG is the base format for Video DVD creation. Convert AVCHD to MPEG for disc authoring projects.

How does file size compare?

MPEG-2 files are typically larger than AVCHD for equivalent quality, but compatibility with legacy systems is unmatched.

Is batch processing supported?

Upload multiple AVCHD recordings and convert them all to MPEG at once.

AVCHD to MPEG Quality Rating

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